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00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015
00016
00017
00018 static real c_b3 = -1.f;
00019 static integer c__1 = 1;
00020
00021 int claed8_(integer *k, integer *n, integer *qsiz, complex *
00022 q, integer *ldq, real *d__, real *rho, integer *cutpnt, real *z__,
00023 real *dlamda, complex *q2, integer *ldq2, real *w, integer *indxp,
00024 integer *indx, integer *indxq, integer *perm, integer *givptr,
00025 integer *givcol, real *givnum, integer *info)
00026 {
00027
00028 integer q_dim1, q_offset, q2_dim1, q2_offset, i__1;
00029 real r__1;
00030
00031
00032 double sqrt(doublereal);
00033
00034
00035 real c__;
00036 integer i__, j;
00037 real s, t;
00038 integer k2, n1, n2, jp, n1p1;
00039 real eps, tau, tol;
00040 integer jlam, imax, jmax;
00041 extern int sscal_(integer *, real *, real *, integer *),
00042 ccopy_(integer *, complex *, integer *, complex *, integer *),
00043 csrot_(integer *, complex *, integer *, complex *, integer *,
00044 real *, real *), scopy_(integer *, real *, integer *, real *,
00045 integer *);
00046 extern doublereal slapy2_(real *, real *), slamch_(char *);
00047 extern int clacpy_(char *, integer *, integer *, complex
00048 *, integer *, complex *, integer *), xerbla_(char *,
00049 integer *);
00050 extern integer isamax_(integer *, real *, integer *);
00051 extern int slamrg_(integer *, integer *, real *, integer
00052 *, integer *, integer *);
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00190
00191 q_dim1 = *ldq;
00192 q_offset = 1 + q_dim1;
00193 q -= q_offset;
00194 --d__;
00195 --z__;
00196 --dlamda;
00197 q2_dim1 = *ldq2;
00198 q2_offset = 1 + q2_dim1;
00199 q2 -= q2_offset;
00200 --w;
00201 --indxp;
00202 --indx;
00203 --indxq;
00204 --perm;
00205 givcol -= 3;
00206 givnum -= 3;
00207
00208
00209 *info = 0;
00210
00211 if (*n < 0) {
00212 *info = -2;
00213 } else if (*qsiz < *n) {
00214 *info = -3;
00215 } else if (*ldq < max(1,*n)) {
00216 *info = -5;
00217 } else if (*cutpnt < min(1,*n) || *cutpnt > *n) {
00218 *info = -8;
00219 } else if (*ldq2 < max(1,*n)) {
00220 *info = -12;
00221 }
00222 if (*info != 0) {
00223 i__1 = -(*info);
00224 xerbla_("CLAED8", &i__1);
00225 return 0;
00226 }
00227
00228
00229
00230 if (*n == 0) {
00231 return 0;
00232 }
00233
00234 n1 = *cutpnt;
00235 n2 = *n - n1;
00236 n1p1 = n1 + 1;
00237
00238 if (*rho < 0.f) {
00239 sscal_(&n2, &c_b3, &z__[n1p1], &c__1);
00240 }
00241
00242
00243
00244 t = 1.f / sqrt(2.f);
00245 i__1 = *n;
00246 for (j = 1; j <= i__1; ++j) {
00247 indx[j] = j;
00248
00249 }
00250 sscal_(n, &t, &z__[1], &c__1);
00251 *rho = (r__1 = *rho * 2.f, dabs(r__1));
00252
00253
00254
00255 i__1 = *n;
00256 for (i__ = *cutpnt + 1; i__ <= i__1; ++i__) {
00257 indxq[i__] += *cutpnt;
00258
00259 }
00260 i__1 = *n;
00261 for (i__ = 1; i__ <= i__1; ++i__) {
00262 dlamda[i__] = d__[indxq[i__]];
00263 w[i__] = z__[indxq[i__]];
00264
00265 }
00266 i__ = 1;
00267 j = *cutpnt + 1;
00268 slamrg_(&n1, &n2, &dlamda[1], &c__1, &c__1, &indx[1]);
00269 i__1 = *n;
00270 for (i__ = 1; i__ <= i__1; ++i__) {
00271 d__[i__] = dlamda[indx[i__]];
00272 z__[i__] = w[indx[i__]];
00273
00274 }
00275
00276
00277
00278 imax = isamax_(n, &z__[1], &c__1);
00279 jmax = isamax_(n, &d__[1], &c__1);
00280 eps = slamch_("Epsilon");
00281 tol = eps * 8.f * (r__1 = d__[jmax], dabs(r__1));
00282
00283
00284
00285
00286
00287 if (*rho * (r__1 = z__[imax], dabs(r__1)) <= tol) {
00288 *k = 0;
00289 i__1 = *n;
00290 for (j = 1; j <= i__1; ++j) {
00291 perm[j] = indxq[indx[j]];
00292 ccopy_(qsiz, &q[perm[j] * q_dim1 + 1], &c__1, &q2[j * q2_dim1 + 1]
00293 , &c__1);
00294
00295 }
00296 clacpy_("A", qsiz, n, &q2[q2_dim1 + 1], ldq2, &q[q_dim1 + 1], ldq);
00297 return 0;
00298 }
00299
00300
00301
00302
00303
00304
00305
00306 *k = 0;
00307 *givptr = 0;
00308 k2 = *n + 1;
00309 i__1 = *n;
00310 for (j = 1; j <= i__1; ++j) {
00311 if (*rho * (r__1 = z__[j], dabs(r__1)) <= tol) {
00312
00313
00314
00315 --k2;
00316 indxp[k2] = j;
00317 if (j == *n) {
00318 goto L100;
00319 }
00320 } else {
00321 jlam = j;
00322 goto L70;
00323 }
00324
00325 }
00326 L70:
00327 ++j;
00328 if (j > *n) {
00329 goto L90;
00330 }
00331 if (*rho * (r__1 = z__[j], dabs(r__1)) <= tol) {
00332
00333
00334
00335 --k2;
00336 indxp[k2] = j;
00337 } else {
00338
00339
00340
00341 s = z__[jlam];
00342 c__ = z__[j];
00343
00344
00345
00346
00347 tau = slapy2_(&c__, &s);
00348 t = d__[j] - d__[jlam];
00349 c__ /= tau;
00350 s = -s / tau;
00351 if ((r__1 = t * c__ * s, dabs(r__1)) <= tol) {
00352
00353
00354
00355 z__[j] = tau;
00356 z__[jlam] = 0.f;
00357
00358
00359
00360 ++(*givptr);
00361 givcol[(*givptr << 1) + 1] = indxq[indx[jlam]];
00362 givcol[(*givptr << 1) + 2] = indxq[indx[j]];
00363 givnum[(*givptr << 1) + 1] = c__;
00364 givnum[(*givptr << 1) + 2] = s;
00365 csrot_(qsiz, &q[indxq[indx[jlam]] * q_dim1 + 1], &c__1, &q[indxq[
00366 indx[j]] * q_dim1 + 1], &c__1, &c__, &s);
00367 t = d__[jlam] * c__ * c__ + d__[j] * s * s;
00368 d__[j] = d__[jlam] * s * s + d__[j] * c__ * c__;
00369 d__[jlam] = t;
00370 --k2;
00371 i__ = 1;
00372 L80:
00373 if (k2 + i__ <= *n) {
00374 if (d__[jlam] < d__[indxp[k2 + i__]]) {
00375 indxp[k2 + i__ - 1] = indxp[k2 + i__];
00376 indxp[k2 + i__] = jlam;
00377 ++i__;
00378 goto L80;
00379 } else {
00380 indxp[k2 + i__ - 1] = jlam;
00381 }
00382 } else {
00383 indxp[k2 + i__ - 1] = jlam;
00384 }
00385 jlam = j;
00386 } else {
00387 ++(*k);
00388 w[*k] = z__[jlam];
00389 dlamda[*k] = d__[jlam];
00390 indxp[*k] = jlam;
00391 jlam = j;
00392 }
00393 }
00394 goto L70;
00395 L90:
00396
00397
00398
00399 ++(*k);
00400 w[*k] = z__[jlam];
00401 dlamda[*k] = d__[jlam];
00402 indxp[*k] = jlam;
00403
00404 L100:
00405
00406
00407
00408
00409
00410
00411 i__1 = *n;
00412 for (j = 1; j <= i__1; ++j) {
00413 jp = indxp[j];
00414 dlamda[j] = d__[jp];
00415 perm[j] = indxq[indx[jp]];
00416 ccopy_(qsiz, &q[perm[j] * q_dim1 + 1], &c__1, &q2[j * q2_dim1 + 1], &
00417 c__1);
00418
00419 }
00420
00421
00422
00423
00424 if (*k < *n) {
00425 i__1 = *n - *k;
00426 scopy_(&i__1, &dlamda[*k + 1], &c__1, &d__[*k + 1], &c__1);
00427 i__1 = *n - *k;
00428 clacpy_("A", qsiz, &i__1, &q2[(*k + 1) * q2_dim1 + 1], ldq2, &q[(*k +
00429 1) * q_dim1 + 1], ldq);
00430 }
00431
00432 return 0;
00433
00434
00435
00436 }